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The surface stress density method as a form-finding tool for tensile membranes

机译:表面应力密度法作为拉伸膜的找形工具

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Form-finding for membrane tension structures is a delicate oper- ation which must ensure both the absence of compressive areas and interactive control of the forms generated. Until now, methods have generally been based on large displacements and strain analysis that provide non--linear formulations, resolution and com- putation are, therefore, too complex and cumbersome. This paper describes a new method of form--finding which reflects a wish to provide architects with a simple, effective and reliable investigation suited to their needs. The surface stress density method uses sur- face triangular elements with an isotropic stress tensor and leads to an iterative procedure which converges on configurations that satisfy the laws of static equilibrium. Mathematical considerations ensure the convergence conditions. This method enables the designer to generate a broad range of structures (pneumatic mem- branes or cable-reinforced membranes ), while conserving control of shape and internal stress distribution. Moreover, the formulation draws a parallel with the force density method and a combined approach may be specified, particularly for the monitoring of rein- forcing cable.
机译:膜张紧结构的找形是一项微妙的操作,必须确保不存在压缩区域以及对生成的形体进行交互控制。到目前为止,方法通常基于大位移和应变分析,因此提供非线性公式,分辨率和计算量过于复杂且麻烦。本文介绍了一种新的形式查找方法,它反映了一种希望为建筑师提供适合其需求的简单,有效和可靠的调查方法。表面应力密度法使用具有各向同性应力张量的表面三角形单元,并导致迭代过程收敛于满足静态平衡定律的构型。数学上的考虑确保了收敛条件。这种方法使设计人员能够生成各种结构(气动膜或电缆增强膜),同时又能保持对形状和内部应力分布的控制。此外,该公式与力密度法具有相似之处,并且可以指定一种组合方法,特别是用于监控钢筋。

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